Title: Biodegradation of the herbicide mecoprop-p with soil depth and its relationship with class III tfdA genes

نویسندگان

  • Sonia Rodríguez-Cruz
  • Jacob Bælum
  • Liz J. Shaw
  • Sebastian R. Sørensen
  • Shengjing Shi
  • Thomas Aspray
  • Carsten S. Jacobsen
  • Gary D. Bending
  • Warwick
چکیده

This paper is made available online in accordance with publisher policies. Please scroll down to view the document itself. Please refer to the repository record for this item and our policy information available from the repository home page for further information. To see the final version of this paper please visit the publisher's website. Access to the published version may require a subscription. Title: Biodegradation of the herbicide mecoprop-p with soil depth and its relationship with class III tfdA genes. Title: Biodegradation of the herbicide mecoprop-p with soil depth and its relationship 1 with class III tfdA genes 2 3 Names of authors: Abstract 36 Mecoprop-p [(R)-2-(4-chloro-2-methylphenoxy) propanoic acid) is widely used 37 in agriculture and poses an environmental concern because of its susceptibility to leach 38 from soil to water. We investigated the effect of soil depth on mecoprop-p 39 biodegradation and its relationship with the number and diversity of tfdA related genes, 40 which are the most widely known genes involved in degradation of the 41 phenoxyalkanoic acid group of herbicides by bacteria. Mecoprop-p half-life (DT 50) was 42 approximately 12 days in soil sampled from <30 cm depth, and increased progressively 43 with soil depth, reaching over 84 days at 70-80 cm. In subsoil there was a lag period of 44 between 23 and 34 days prior to a phase of rapid degradation. No lag phase occurred in 45 top-soil samples prior to the onset of degradation. The maximum degradation rate was 46 the same in top-soil and subsoil samples. Although diverse tfdAα and tfdA genes were 47 present prior to mecoprop-p degradation, real time PCR revealed that degradation was 48 associated with proliferation of tfdA genes. The number of tfdA genes and the most 49 probable number of mecoprop-p degrading organisms in soil prior to mecoprop-p 50 addition were below the limit of quantification and detection respectively. Melting 51 curves from the real time PCR analysis showed that prior to mecoprop-p degradation 52 both class I and class III tfdA genes were present in top-and subsoil samples. However 53 at all soil depths only tfdA class III genes proliferated during degradation. Denaturing 54 gradient gel electrophoresis confirmed that class III tfdA genes were associated with 55 mecoprop-p degradation. Degradation was not associated with the induction of novel 56 tfdA genes in top-or subsoil samples, and there were no apparent differences in tfdA 57 gene diversity with …

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Novel a - ketoglutarate dioxygenase tfdA - related genes are found in soil DNA after exposure to phenoxyalkanoic herbicidesemi

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تاریخ انتشار 2009